Bao Xiaoyi, Yu Qinrong, Chen Liang
Fiber Optics Group, Department of Physics, University of Ottawa, Ottawa, Ontario K1N 6N5, Canada.
Opt Lett. 2004 Jun 15;29(12):1342-4. doi: 10.1364/ol.29.001342.
Simultaneous temperature and strain measurement with a distributed Brillouin loss system is proposed by use of the parameters Brillouin frequency, power, and bandwidth, for PANDA, bow-tie, and tiger polarization-maintaining fibers for the first time to our knowledge. The expressions for simultaneous temperature and strain sensing and the maximum errors and rms values of temperature and strain measurements are derived with three combinations of the parameters: (1) power and Brillouin frequency, (2) bandwidth and Brillouin frequency, and (3) bandwidth and Brillouin power. Our experiments demonstrate that simultaneous temperature and strain sensing at 20-cm spatial resolution for Brillouin frequency combined with bandwidth the strain/temperature resolutions are 39 microepsilon/2 degrees C (PANDA), 126 microepsilon/3 degrees C (bow tie), and 598 microepsilon/16 degrees C (tiger); for the Brillouin frequency combined with power the strain/temperature resolutions are 153 microepsilon/8 degrees C (PANDA) and 237 microepsilon/4 degrees C (bow tie); and for the bandwidth combined with power the strain/temperature resolutions are 135 microepsilon/38 degrees C (PANDA) and 195 microepsilon/38 degrees C (bow tie).
据我们所知,首次利用布里渊频率、功率和带宽等参数,提出了一种用于熊猫型、蝴蝶结型和老虎型保偏光纤的分布式布里渊损耗系统同时进行温度和应变测量的方法。通过参数的三种组合推导了同时进行温度和应变传感的表达式以及温度和应变测量的最大误差和均方根值:(1) 功率和布里渊频率;(2) 带宽和布里渊频率;(3) 带宽和布里渊功率。我们的实验表明,对于布里渊频率与带宽相结合的情况,在20厘米空间分辨率下同时进行温度和应变传感时,熊猫型光纤的应变/温度分辨率为39微应变/2摄氏度,蝴蝶结型光纤为126微应变/3摄氏度,老虎型光纤为598微应变/16摄氏度;对于布里渊频率与功率相结合的情况,熊猫型光纤的应变/温度分辨率为153微应变/8摄氏度,蝴蝶结型光纤为237微应变/4摄氏度;对于带宽与功率相结合的情况,熊猫型光纤的应变/温度分辨率为135微应变/38摄氏度,蝴蝶结型光纤为195微应变/38摄氏度。